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Surface modification of PET film via a large area atmospheric pressure plasma: An optical analysis of the plasma and surface characterization of the polymer film

机译:通过大面积大气压等离子体表面改性PET膜:聚合物膜的血浆和表面表征的光学分析

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This paper presents a comprehensive study of surface modification of polyethylene terephthalate film substrates to improve its adhesion properties using a large area atmospheric plasma. Different aspects of this study includes (1) analysis of the physical and chemical characteristics of the plasma (2) as well as the substrates, and (3) evaluation of adhesion of an acrylate based hard coating onto PET substrates. PET is chemically inert to most coatings, but atmospheric plasmas can modify the surface in a manner that is compatible with high throughput manufacturing. First, optical emission spectroscopy was employed to analyze the plasma in terms of its chemical composition as well as physical characteristics such as electron temperature and density. This section estimates electron temperature of 0.2-0.4 eV and density in the order of 10(14)-10(15) cm(-3) for the studied plasmas. Second, various plasma gas mixtures with helium as the seed gas mixed with fraction of oxygen and/or nitrogen (0.5-1.1 v%) were used to carry out the surface treatment of the substrates at different exposure doses between 15 and 75 J cm(-2). Post-treatment characterization by XPS, AFM, and a goniometer show that the surface becomes enriched with oxygen, rougher, and more wetting depends on the power and composition of the plasma Lastly, standard adhesion 180 degrees T-peel tests indicated improved adhesion after treatment. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了对聚对苯二甲酸乙二醇酯薄膜基材的表面改性的综合研究,以改善其使用大面积大气等离子体的粘附性能。该研究的不同方面包括(1)分析血浆(2)的物理和化学特性以及底物,以及(3)基于丙烯酸酯的硬涂层的粘附到PET底物上的评价。 PET对大多数涂层进行化学惰性,但大气等离子体可以以与高通量制造兼容的方式改变表面。首先,采用光发射光谱法以其化学组成和物理特性(例如电子温度和密度)分析等离子体。该部分估计所研究的等离子体为10(14)-10(15)厘米(-3)的102-0.4eV和密度的电气温度。其次,使用与氧化物和/或氮气分数混合的种子气体(0.5-1.1.1.1.1V%)的种子气体的各种等离子体气体混合物用于在15至75J厘米之间的不同曝光剂量下进行基板的表面处理( -2)。通过XPS,AFM和测辐射计的处理后表征表明,表面富含氧气,更粗糙,更湿润,取决于血浆的功率和组成,标准粘合180度T-剥离试验表明治疗后的粘附性改善。 (c)2016 Elsevier B.v.保留所有权利。

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